UCSF

ZINC34802398

Substance Information

In ZINC since Heavy atoms Benign functionality
September 25th, 2009 25 No

Download: MOL2 SDF SMILES Flexibase

Physical Representations

Type pH range xlogP Des A‑Pol Apolar desolvation (kcal/mol) Des Pol Polar desolvation (kcal/mol) H Don H-bond donors H Acc H-bond acceptors Chg Net charge tPSA (Ų) MWT Molecular weight (g/mol) RB Rotatable bonds DL
Ref Reference (pH 7) 0.53 2.46 -67.34 4 7 1 109 367.447 6
Hi High (pH 8-9.5) 0.53 3.67 -88.55 3 7 0 112 366.439 6

Activity (Go SEA)

Clustered Target Annotations
Code Description Organism Class Affinity (nM) LE (kcal/mol/atom) Type
ADA17-2-E ADAM17 (cluster #2 Of 2), Eukaryotic Eukaryotes 1 0.50 Binding ≤ 10μM
MMP13-1-E Matrix Metalloproteinase 13 (cluster #1 Of 4), Eukaryotic Eukaryotes 1900 0.32 Binding ≤ 10μM
MMP2-1-E 72 KDa Type IV Collagenase (cluster #1 Of 3), Eukaryotic Eukaryotes 1590 0.32 Binding ≤ 10μM
ChEMBL Target Annotations
Uniprot Swissprot Description Affinity (nM) LE (kcal/mol/atom) Type
ADA17_HUMAN P78536 ADAM17, Human 1 0.50 Binding ≤ 1μM
ADA17_HUMAN P78536 ADAM17, Human 1 0.50 Binding ≤ 10μM
MMP13_HUMAN P45452 Matrix Metalloproteinase 13, Human 1900 0.32 Binding ≤ 10μM
MMP2_HUMAN P08253 Matrix Metalloproteinase-2, Human 1590 0.32 Binding ≤ 10μM

Reactome Annotations from Targets (via Uniprot)

Description Species
Activated NOTCH1 Transmits Signal to the Nucleus
Activation of Matrix Metalloproteinases
Assembly of collagen fibrils and other multimeric structures
Collagen degradation
Constitutive Signaling by NOTCH1 HD Domain Mutants
Constitutive Signaling by NOTCH1 HD+PEST Domain Mutants
Constitutive Signaling by NOTCH1 PEST Domain Mutants
Constitutive Signaling by NOTCH1 t(7;9)(NOTCH1:M1580_K2555) Translocation Mutant
Degradation of the extracellular matrix
EPH-ephrin mediated repulsion of cells
Growth hormone receptor signaling
Nuclear signaling by ERBB4
Regulated proteolysis of p75NTR
Regulation of Insulin-like Growth Factor (IGF) transport and uptake by Insulin-l
Release of Hh-Np from the secreting cell
Signaling by EGFR
TNF signaling

Analogs ( Draw Identity 99% 90% 80% 70% )